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In situ pressureless sintering of SiC/MoSi_2 composites

机译:SiC / MoSi_2复合材料的原位无压烧结

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摘要

SiC-reinforced MoSi_2 composites have been successfully prepared by in situ pressureless sintering from elemental powders of Mo, Si and C. Meanwhile, the evolutions of the samples' microstructure and phase at different temperatures were investigated by using X-ray diffraction (XRD) and scanning electron microscopy (SEM) with an energy dispersive X-ray spectrometer (EDS). It can be seen that at the temperature of 1100 °C, the main phases were Mo and Si, accompanying with a small amount of rich molybdenum products Mo5Si3 and Mo3Si. Then the main phases changed to MoSi_2 and SiC when the sintering temperature reached 1300 °C. Finally we obtained MoSi_2/SiC composites with well-dispersed SiC particles after sintering at the temperature of 1550 °C for 120 min. The evolution of porosity in these composites fits the porosity reduction model well developed by Pines and Bruck, which revealed the particle agglomeration in the composites. The flexural strength and fracture toughness of 10% SiC/MoSi_2 composites were up to 274.5 MPa and 5.5 MPa m_(1/2), increased by approximately 40.8% and 30.6% compared with those of monolithic MoSi_2, respectively.
机译:通过原位无压烧结Mo,Si和C元素粉末成功地制备了SiC增强的MoSi_2复合材料。同时,利用X射线衍射(XRD)和X射线衍射研究了样品在不同温度下的组织和相变。扫描电子显微镜(SEM)和能量色散X射线光谱仪(EDS)。可以看出,在1100°C的温度下,主要相为Mo和Si,并伴有少量富钼产物Mo5Si3和Mo3Si。当烧结温度达到1300℃时,主相转变为MoSi_2和SiC。最后,在1550°C的温度下烧结120分钟后,获得了具有均匀分散的SiC颗粒的MoSi_2 / SiC复合材料。这些复合材料中孔隙度的演变与Pines和Bruck很好地开发的孔隙率降低模型相吻合,该模型揭示了复合物中颗粒的团聚。 10%SiC / MoSi_2复合材料的弯曲强度和断裂韧性分别达到274.5 MPa和5.5 MPa m_(1/2),分别比整体MoSi_2分别提高了约40.8%和30.6%。

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